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title = {Computational studies and optimization of wakefield accelerators},
journal = {Journal of Physics: Conference Series}
}

@techreport{Geddes2009,
title={Laser plasma particle accelerators: Large fields for smaller facility sources},
author={Geddes, Cameron GR and Cormier-Michel, Estelle and Esarey, Eric H and Schroeder, Carl B and Vay, Jean-Luc and Leemans, Wim P and Bruhwiler, David L and Cary, John R and Cowan, Ben and Durant, Marc and others},
year={2009},
institution={Lawrence Berkeley National Laboratory (LBNL), Berkeley, CA (United States)}
}

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title={Scaled simulation design of high quality laser wakefield accelerator stages},
author={Geddes, CGR},
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year={2010}
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title = {Recent results and future challenges for large scale particle-in-cell simulations of plasma-based accelerator concepts},
journal = {Journal of Physics: Conference Series}
}

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title = {Multi-GeV Electron Beams from Capillary-Discharge-Guided Subpetawatt Laser Pulses in the Self-Trapping Regime},
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title={Energy doubling of 42 GeV electrons in a metre-scale plasma wakefield accelerator},
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title={Multistage coupling of independent laser-plasma accelerators},
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pages={190--193},
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publisher={Nature Publishing Group UK London},
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author = {Mora,Patrick  and Antonsen, Jr.,Thomas M. },
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doi = {10.1063/1.872134}
}

@article{Huang2006,
title = {QUICKPIC: A highly efficient particle-in-cell code for modeling wakefield acceleration in plasmas},
journal = {Journal of Computational Physics},
volume = {217},
number = {2},
pages = {658-679},
year = {2006},
issn = {0021-9991},
doi = {10.1016/j.jcp.2006.01.039},
author = {C. Huang and V.K. Decyk and C. Ren and M. Zhou and W. Lu and W.B. Mori and J.H. Cooley and T.M. Antonsen and T. Katsouleas}
}

@article{Benedetti2010,
author = {Benedetti,C.  and Schroeder,C. B.  and Esarey,E.  and Geddes,C. G. R.  and Leemans,W. P. },
title = {Efficient Modeling of Laser‐Plasma Accelerators with INF\&RNO},
journal = {AIP Conference Proceedings},
volume = {1299},
number = {1},
pages = {250-255},
year = {2010},
doi = {10.1063/1.3520323}
}

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title = {Characteristics of an envelope model for laser–plasma accelerator simulation},
journal = {Journal of Computational Physics},
volume = {230},
number = {1},
pages = {61-86},
year = {2011},
issn = {0021-9991},
doi = {10.1016/j.jcp.2010.09.009},
author = {Benjamin M. Cowan and David L. Bruhwiler and Estelle Cormier-Michel and Eric Esarey and Cameron G.R. Geddes and Peter Messmer and Kevin M. Paul}
}

@article{Vay2007,
title = {Noninvariance of Space- and Time-Scale Ranges under a Lorentz Transformation and the Implications for the Study of Relativistic Interactions},
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}

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doi = {10.1088/1742-6596/180/1/012006},
year = {2009},
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author = {J-L Vay and  D L Bruhwiler and  C G R Geddes and  W M Fawley and  S F Martins and  J R Cary and  E Cormier-Michel and  B Cowan and  R A Fonseca and  M A Furman and  W Lu and  W B Mori and  L O Silva},
title = {Simulating relativistic beam and plasma systems using an optimal boosted frame},
journal = {Journal of Physics: Conference Series}
}

@article{Vay2009b,
title = {Application of the reduction of scale range in a Lorentz boosted frame to the numerical simulation of particle acceleration devices.},
author = {Vay, J and Fawley, W M and Geddes, C G and Cormier-Michel, E and Grote, D P},
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@article{Vay2010,
author = {Vay,J.‐L.  and Geddes,C. G. R.  and Benedetti,C.  and Bruhwiler,D. L.  and Cormier‐Michel,E.  and Cowan,B. M.  and Cary,J. R.  and Grote,D. P. },
title = {Modeling Laser Wakefield Accelerators in a Lorentz Boosted Frame},
journal = {AIP Conference Proceedings},
volume = {1299},
number = {1},
pages = {244-249},
year = {2010},
doi = {10.1063/1.3520322}
}

@article{Vay2011a,
title = {Numerical methods for instability mitigation in the modeling of laser wakefield accelerators in a Lorentz-boosted frame},
journal = {Journal of Computational Physics},
volume = {230},
number = {15},
pages = {5908-5929},
year = {2011},
issn = {0021-9991},
doi = {10.1016/j.jcp.2011.04.003},
author = {J.-L. Vay and C.G.R. Geddes and E. Cormier-Michel and D.P. Grote}
}

@article{Vay2011b,
author = {Vay,J.-L.  and Geddes,C. G. R.  and Cormier-Michel,E.  and Grote,D. P. },
title = {Effects of hyperbolic rotation in Minkowski space on the modeling of plasma accelerators in a Lorentz boosted frame},
journal = {Physics of Plasmas},
volume = {18},
number = {3},
pages = {030701},
year = {2011},
doi = {10.1063/1.3559483}
}

@article{Vay2011c,
author = {Vay,J.-L.  and Geddes,C. G. R.  and Esarey,E.  and Schroeder,C. B.  and Leemans,W. P.  and Cormier-Michel,E.  and Grote,D. P. },
title = {Modeling of 10 GeV-1 TeV laser-plasma accelerators using Lorentz boosted simulations},
journal = {Physics of Plasmas},
volume = {18},
number = {12},
pages = {123103},
year = {2011},
doi = {10.1063/1.3663841}
}

@article{Martins2010a,
title = {Numerical simulations of laser wakefield accelerators in optimal Lorentz frames},
journal = {Computer Physics Communications},
volume = {181},
number = {5},
pages = {869-875},
year = {2010},
issn = {0010-4655},
doi = {10.1016/j.cpc.2009.12.023},
author = {Samuel F. Martins and Ricardo A. Fonseca and Luís O. Silva and Wei Lu and Warren B. Mori}
}

@article{Martins2010b,
title={Exploring laser-wakefield-accelerator regimes for near-term lasers using particle-in-cell simulation in Lorentz-boosted frames},
author={Martins, Samuel F and Fonseca, RA and Lu, Wei and Mori, Warren B and Silva, LO},
journal={Nature Physics},
volume={6},
number={4},
pages={311--316},
year={2010},
publisher={Nature Publishing Group UK London},
doi={10.1038/nphys1538}
}

@article{Martins2010c,
author = {Martins,S. F.  and Fonseca,R. A.  and Vieira,J.  and Silva,L. O.  and Lu,W.  and Mori,W. B. },
title = {Modeling laser wakefield accelerator experiments with ultrafast particle-in-cell simulations in boosted frames},
journal = {Physics of Plasmas},
volume = {17},
number = {5},
pages = {056705},
year = {2010},
doi = {10.1063/1.3358139}
}

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author = {Bruhwiler,David L.  and Cary,John R.  and Cowan,Benjamin M.  and Paul,Kevin  and Geddes,Cameron G. R.  and Mullowney,Paul J.  and Messmer,Peter  and Esarey,Eric  and Cormier‐Michel,Estelle  and Leemans,Wim  and Vay,Jean‐Luc },
title = {New Developments in the Simulation of Advanced Accelerator Concepts},
journal = {AIP Conference Proceedings},
volume = {1086},
number = {1},
pages = {29-37},
year = {2009},
doi = {10.1063/1.3080922}
}

@article{Yu2016,
title = {Enabling Lorentz boosted frame particle-in-cell simulations of laser wakefield acceleration in quasi-3D geometry},
journal = {Journal of Computational Physics},
volume = {316},
pages = {747-759},
year = {2016},
issn = {0021-9991},
doi = {10.1016/j.jcp.2016.04.014},
author = {Peicheng Yu and Xinlu Xu and Asher Davidson and Adam Tableman and Thamine Dalichaouch and Fei Li and Michael D. Meyers and Weiming An and Frank S. Tsung and Viktor K. Decyk and Frederico Fiuza and Jorge Vieira and Ricardo A. Fonseca and Wei Lu and Luis O. Silva and Warren B. Mori}
}

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title = {Particle-in-Cell modelling of laser–plasma interaction using Fourier decomposition},
journal = {Journal of Computational Physics},
volume = {228},
number = {5},
pages = {1803-1814},
year = {2009},
issn = {0021-9991},
doi = {10.1016/j.jcp.2008.11.017},
author = {A.F. Lifschitz and X. Davoine and E. Lefebvre and J. Faure and C. Rechatin and V. Malka}
}

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title = {Implementation of a hybrid particle code with a PIC description in r–z and a gridless description in ϕ into OSIRIS},
journal = {Journal of Computational Physics},
volume = {281},
pages = {1063-1077},
year = {2015},
issn = {0021-9991},
doi = {10.1016/j.jcp.2014.10.064},
author = {A. Davidson and A. Tableman and W. An and F.S. Tsung and W. Lu and J. Vieira and R.A. Fonseca and L.O. Silva and W.B. Mori}
}

@article{Lehe2016,
title = {A spectral, quasi-cylindrical and dispersion-free Particle-In-Cell algorithm},
journal = {Computer Physics Communications},
volume = {203},
pages = {66-82},
year = {2016},
issn = {0010-4655},
doi = {10.1016/j.cpc.2016.02.007},
author = {Rémi Lehe and Manuel Kirchen and Igor A. Andriyash and Brendan B. Godfrey and Jean-Luc Vay}
}

@article{Andriyash2016,
author = {Andriyash,Igor A.  and Lehe,Remi  and Lifschitz,Agustin },
title = {Laser-plasma interactions with a Fourier-Bessel particle-in-cell method},
journal = {Physics of Plasmas},
volume = {23},
number = {3},
pages = {033110},
year = {2016},
doi = {10.1063/1.4943281}
}

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author = {Shadwick,B. A.  and Schroeder,C. B.  and Esarey,E. },
title = {Nonlinear laser energy depletion in laser-plasma accelerators},
journal = {Physics of Plasmas},
volume = {16},
number = {5},
pages = {056704},
year = {2009},
doi = {10.1063/1.3124185}
}

@article{CormierMichel2009,
author = {Cormier‐Michel,Estelle  and Geddes,C. G. R.  and Esarey,E.  and Schroeder,C. B.  and Bruhwiler,D. L.  and Paul,K.  and Cowan,B.  and Leemans,W. P. },
title = {Scaled simulations of a 10 GeV accelerator},
journal = {AIP Conference Proceedings},
volume = {1086},
number = {1},
pages = {297-302},
year = {2009},
doi = {10.1063/1.3080921}
}

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@misc{Lim2007,
author = {Lim, Chul-Hyun},
issn = {0419-4217},
language = {eng},
number = {3},
title = {The interaction of energetic charged particles with gas and boundaries in the particle simulation of plasmas},
volume = {69},
year = {2007},
url = {https://search.library.berkeley.edu/permalink/01UCS_BER/s4lks2/cdi_proquest_miscellaneous_35689087}
}

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author = {Turner, M. M. and Derzsi, A. and Donkó, Z. and Eremin, D. and Kelly, S. J. and Lafleur, T. and Mussenbrock, T.},
title = "{Simulation benchmarks for low-pressure plasmas: Capacitive discharges}",
journal = {Physics of Plasmas},
volume = {20},
number = {1},
year = {2013},
month = {01},
issn = {1070-664X},
doi = {10.1063/1.4775084},
url = {https://doi.org/10.1063/1.4775084},
note = {013507}
}

@misc{winske2022hybrid,
title={Hybrid codes (massless electron fluid)},
author={D. Winske and Homa Karimabadi and Ari Le and N. Omidi and Vadim Roytershteyn and Adam Stanier},
year={2022},
eprint={2204.01676},
archivePrefix={arXiv},
primaryClass={physics.plasm-ph}
}

@incollection{NIELSON1976,
title = {Particle-Code Models in the Nonradiative Limit},
editor = {JOHN KILLEEN},
series = {Methods in Computational Physics: Advances in Research and Applications},
publisher = {Elsevier},
volume = {16},
pages = {367-388},
year = {1976},
booktitle = {Controlled Fusion},
issn = {0076-6860},
doi = {https://doi.org/10.1016/B978-0-12-460816-0.50015-4},
author = {CLAIR W. NIELSON and H. RALPH LEWIS}
}

@article{MUNOZ2018,
title = {A new hybrid code (CHIEF) implementing the inertial electron fluid equation without approximation},
journal = {Computer Physics Communications},
volume = {224},
pages = {245-264},
year = {2018},
issn = {0010-4655},
doi = {https://doi.org/10.1016/j.cpc.2017.10.012},
url = {https://www.sciencedirect.com/science/article/pii/S0010465517303521},
author = {P.A. Muñoz and N. Jain and P. Kilian and J. Büchner},
keywords = {Plasma simulation, Hybrid methods, Particle-in-cell method}
}

@article{Le2016,
author = {Le, A. and Daughton, W. and Karimabadi, H. and Egedal, J.},
title = "{Hybrid simulations of magnetic reconnection with kinetic ions and fluid electron pressure anisotropy}",
journal = {Physics of Plasmas},
volume = {23},
number = {3},
year = {2016},
month = {03},
abstract = "{We present the first hybrid simulations with kinetic ions and recently developed equations of state for the electron fluid appropriate for reconnection with a guide field. The equations of state account for the main anisotropy of the electron pressure tensor. Magnetic reconnection is studied in two systems, an initially force-free current sheet and a Harris sheet. The hybrid model with the equations of state is compared to two other models, hybrid simulations with isothermal electrons and fully kinetic simulations. Including the anisotropic equations of state in the hybrid model provides a better match to the fully kinetic model. In agreement with fully kinetic results, the main feature captured is the formation of an electron current sheet that extends several ion inertial lengths. This electron current sheet modifies the Hall magnetic field structure near the X-line, and it is not observed in the standard hybrid model with isotropic electrons. The saturated reconnection rate in this regime nevertheless remains similar in all three models. Implications for global modeling are discussed.}",
issn = {1070-664X},
doi = {10.1063/1.4943893},
url = {https://doi.org/10.1063/1.4943893},
note = {032114}
}

@article{Stanier2020,
title = {A cancellation problem in hybrid particle-in-cell schemes due to finite particle size},
journal = {Journal of Computational Physics},
volume = {420},
pages = {109705},
year = {2020},
issn = {0021-9991},
doi = {https://doi.org/10.1016/j.jcp.2020.109705},
url = {https://www.sciencedirect.com/science/article/pii/S0021999120304794},
author = {A. Stanier and L. Chacón and A. Le},
keywords = {Hybrid, Particle-in-cell, Plasma, Asymptotic-preserving, Cancellation problem, Space weather},
}